IP Library › Granted Patent US 8,754,709
Granted Patent B2
US 8,754,709 · App. 13/513,797 · Granted Jun 17, 2014

Doherty power amplifier and implementation method thereof

Inventors: Huazhang Chen (Shenzhen, CN); Jianli Liu (Shenzhen, CN); Xiaojun Cui (Shenzhen, CN)
Assignee: ZTE Corporation
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Quick Facts
Patent No.
US 8,754,709
App. No.
13/513,797
Granted
Jun 17, 2014
Kind
B2
Abstract

The present invention discloses a Doherty power amplifier and a method for implementing the Doherty power amplifier. The Doherty power amplifier includes a peak amplifying branch and a carrier amplifying branch, wherein, the peak amplifying branch includes a radio frequency switch, and the radio frequency switch is configured to control on/off of a last stage peak power amplifier in the peak amplifying branch; wherein, a high voltage heterojunction bipolar transistor (HVHBT) device is adopted for a last stage carrier power amplifier of the carrier amplifying branch, and a laterally diffused metal oxide semiconductor (LDMOS) device is adopted for the last stage peak power amplifier of the peak amplifying branch of the power amplifier. By the present invention, it avoids that the peak power consumption is increased when the peak power amplifier is on ahead of time and enhances the efficiency of the whole power amplifier.

Claims (32)

1. A Doherty power amplifier, including a peak amplifying branch and a carrier amplifying branch, wherein, the peak amplifying branch includes a radio frequency switch, and the radio frequency switch is configured to control on/off of a last stage peak power amplifier in the peak amplifying branch;

wherein, a high voltage heterojunction bipolar transistor (HVHBT) device is adopted for a last stage carrier power amplifier of the carrier amplifying branch, and a laterally diffused metal oxide semiconductor (LDMOS) device is adopted for the last stage peak power amplifier of the peak amplifying branch of the power amplifier;

wherein,

when the peak amplifying branch contains multistage peak power amplifiers, the radio frequency switch is located between a driver stage peak power amplifier and the last stage peak power amplifier.

2. The power amplifier according to claim 1 , wherein,

the radio frequency switch includes: a PIN diode radio frequency switch, or a monolithic microwave integrated circuit (MMIC) radio frequency switch.

3. The power amplifier according to claim 1 , wherein,

the radio frequency switch is configured to control the on/off of the last stage peak power amplifier in the peak amplifying branch through following way:

when an input signal of the peak amplifying branch increases to a on level of the radio frequency switch, the radio frequency switch is on, which makes the last stage peak power amplifier be conductive.

4. The power amplifier according to claim 3 , wherein,

the radio frequency switch further includes a voltage control port, and the on/off level of the radio frequency switch is adjusted through magnitude of control voltage of the voltage control port.

5. A method for implementing a Doherty power amplifier, including:

through a radio frequency switch in a peak amplifying branch of the Doherty power amplifier, controlling on/off of a last stage peak power amplifier in the peak amplifying branch;

when the peak amplifying branch contains multistage peak amplifiers, configuring the radio frequency switch located between a driver stage peak power amplifier and the last stage peak power amplifier;

wherein, a high voltage heterojunction bipolar transistor (HVHBT) device is adopted for a last stage carrier power amplifier of the carrier amplifying branch of the power amplifier, and a laterally diffused metal oxide semiconductor (LDMOS) device is adopted for the last stage peak power amplifier of the peak amplifying branch of the power amplifier.

6. The method according to claim 5 , wherein,

the radio frequency switch includes: a PIN diode radio frequency switch, or a monolithic microwave integrated circuit (MMIC) radio frequency switch.

7. The method according to claim 5 , wherein,

the step of controlling on/off of a last stage peak power amplifier in the peak amplifying branch through a radio frequency switch in a peak amplifying branch of the Doherty power amplifier includes:

when an input signal of the peak amplifying branch increases to a on level of the radio frequency switch, the radio frequency switch being on, which makes the last stage peak power amplifier be conductive.

8. The method according to claim 7 , further including,

adjusting the on/off level of the radio frequency switch through magnitude of control voltage of a voltage control port on the radio frequency switch.

9. The power amplifier according to claim 2 , wherein,

the radio frequency switch is configured to control the on/off of the last stage peak power amplifier in the peak amplifying branch through following way:

when an input signal of the peak amplifying branch increases to a on level of the radio frequency switch, the radio frequency switch is on, which makes the last stage peak power amplifier be conductive.

10. The power amplifier according to claim 9 , wherein,

the radio frequency switch further includes a voltage control port, and the on/off level of the radio frequency switch is adjusted through magnitude of control voltage of the voltage control port.

11. The method according to claim 6 , wherein,

the step of controlling on/off of a last stage peak power amplifier in the peak amplifying branch through a radio frequency switch in a peak amplifying branch of the Doherty power amplifier includes:

when an input signal of the peak amplifying branch increases to a on level of the radio frequency switch, the radio frequency switch being on, which makes the last stage peak power amplifier be conductive.

12. The method according to claim 11 , further including,

adjusting the on/off level of the radio frequency switch through magnitude of control voltage of a voltage control port on the radio frequency switch.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 4, 2012
From: CHEN, HUAZHANG; LIU, JIANLI; CUI, XIAOJUN
To: ZTE CORPORATION
Reel/Frame 028313/0974 →
Priority Claims (1)
CN 2011 1 0110331 · Apr 29, 2011 · national
Continuity (1)
Related Publication 20140035677A1 · Feb 6, 2014